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PDF
RXV667.pdf
UR067100 C.EL 10uF 50V * WU428100 P.C.B. OPERATION A(6063) C4238 WK041800 C.EL 10uF 16V CB401 VQ045400 CN.BS.PIN 25P C4239 US135100 C.CE.CHP 0.1uF 16V CB402 VQ047200 CN.BS.PIN 9P C4240 WJ603500 C.MYLAR 680pF 50V CB451 VQ961100 CN.BS.PIN 8P C4241 US135100 C.CE.CHP 0.1uF 16V CB452 VQ962100 CN.BS.PIN 18P C4242
in „Yamaha RX-V667 Reparatur und Bezugsquellen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
x31ba001.f10.3__S1D13706_Spec_Rev_10.3_.pdf
Epson Research and Development Vancouver Design Center . Oscillator SH-3 BUS I A[25:17] Decoder M/R# K 18-bit C FPDAT[17:0] D[17:0] TFT Display CSn# CS# FPFRAME FPFRAME A[16:1] AB[16:1] FPLINE FPLINE r D[15:0] DB[15:0] w FPSHIFT FPSHIFT P WE0# WE0# s WE1# WE1# DRDY DRDY B BS# BS# S1D13706 RD/WR# RD/WR# GPO
in „TFT-Display Controller an STM32 über FSMC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
jbl_es250pw_subwoofer_service_manual_40.pdf
is AN2 (XInC2 muxed analog input #2.) J6 = 0R (Input voltage range of ADC is 0V to 1.8V.) Edge pin-18 J7 = 0R Pin 18 is FW selectable as either GPIO port pin PI0 or J8 = DNP baseband unit #1 clock pin BB1CLK. (PI0 is FW configurable as input or output.) J7 = DNP Pin 18 is AN1 (XInC2 muxed analog input
in „Synchronisiertes Wireless Audio (Digital)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ssd1906_hdw.pdf
high 6.8 ns 3 A[17:1], M/R#, RD/WR# setup to CKIO 1 ns 4 A[17:1], M/R#, RD/WR# hold from CSn# 0 ns t BS# setup 1 ns 5 6 BS# hold 2 ns 7 CSn# setup 1 ns 8 CSn# high setup to CKIO 2 ns t9a RD# or WEn# asserted for MCLK = BCLK (max.MCLK=50MHz) 13 TCKIO t9b RD# or WEn# asserted for MCLK = BCLK ÷2 18 TCKIO
in „Suche Touchscreen Controller für 4.3" 480x272 TFT“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SatDumpdoc.pdf
, otherwise : ◦ 1 for LOW ◦ 2 for HIGH • attenuation : A�enua�on in dBs • hf_lna : Enable or disable the HF LNA HackRF • amp : Enable the main (non-programmable) amplifier • lna_gain : LNA Gain in dBs • vga_gain : VGA Gain in dBs • bias : Enable Bias-Tee power • manual_bw
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PDF
SSD1906R1_1.pdf
high 6.8 ns 3 A[17:1], M/R#, RD/WR# setup to CKIO 1 ns 4 A[17:1], M/R#, RD/WR# hold from CSn# 0 ns t BS# setup 1 ns 5 6 BS# hold 2 ns 7 CSn# setup 1 ns 8 CSn# high setup to CKIO 2 ns t9a RD# or WEn# asserted for MCLK = BCLK (max. 13 TCKIO MCLK=50MHz) t9b RD# or WEn# asserted for MCLK = BCLK ÷2 18 TCKIO
in „Grafikcontroller S1D13706“ · Mikrocontroller und Digitale Elektronik ·
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PDF
toshiba_satellite_l755.pdf
M_A_A15 78 A15 DQ15 36 M_A_DQ15 112 VDD14 M VSS29 133 DQ16 39 M_A_DQ16 117 VDD15 M VSS30 134 [3] M_A_BS#0 109 BA0 DQ17 41 M_A_DQ17 118 VDD16 I VSS31 138 [3] M_A_BS#1 108 BA1 M DQ18 51 M_A_DQ18 123 VDD17 D VSS32 139 [3] M_A_BS#2 79 BA2 M DQ19 53 M_A_DQ19 124 VDD18 - VSS33 144 [3] M_A_CS#0 114 S0# I DQ20
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PDF
ST7036-V1.4.pdf
and display shift Display Shift 0 0 0 0 0 1 S/C R/L X X control bit, and the direction, withoutµs 18.5 µs 14.3 µs changing DDRAM data. Set CGRAM address in address Set CGRAM 0 0 0 1 AC5 AC4 AC3 AC2 AC1 AC0 26.3 µs 18.5 µs 14.3 µs counter Instruction table 1(IS[2:1]=[0,1]) BS=1:1/4 bias BS=0:1/5 bias Bias Set 0 0 0 0 0 1 BS 1 0 FX FX: fixed on high in 3-line 26.3 µs 18.5 µs 14.3 µs application and fixed on low in other applications. Set ICON 0 0 0 1 0 0 AC3 AC2 AC1 AC0 Set ICON address in address 26.3 µs 18.5 µs 14.3 µs
in „EA DOG-M Display (ST7046) und customchars. ARGH!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7036-V1.7.pdf
and display shift Display Shift 0 0 0 0 0 1 S/C R/L X X control bit, and the direction, withoutµs 18.5 µs 14.3 µs changing DDRAM data. Set CGRAM address in address Set CGRAM 0 0 0 1 AC5 AC4 AC3 AC2 AC1 AC0 26.3 µs 18.5 µs 14.3 µs counter Instruction table 1(IS[2:1]=[0,1]) BS=1:1/4 bias BS=0:1/5 bias Bias Set 0 0 0 0 0 1 BS 1 0 FX FX: fixed on high in 3-line 26.3 µs 18.5 µs 14.3 µs application and fixed on low in other applications. Set ICON 0 0 0 1 0 0 AC3 AC2 AC1 AC0 Set ICON address in address 26.3 µs 18.5 µs 14.3 µs
in „DOG-M-Display/ST7036 Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7036-V1.7.pdf
and display shift Display Shift 0 0 0 0 0 1 S/C R/L X X control bit, and the direction, withoutµs 18.5 µs 14.3 µs changing DDRAM data. Set CGRAM address in address Set CGRAM 0 0 0 1 AC5 AC4 AC3 AC2 AC1 AC0 26.3 µs 18.5 µs 14.3 µs counter Instruction table 1(IS[2:1]=[0,1]) BS=1:1/4 bias BS=0:1/5 bias Bias Set 0 0 0 0 0 1 BS 1 0 FX FX: fixed on high in 3-line 26.3 µs 18.5 µs 14.3 µs application and fixed on low in other applications. Set ICON 0 0 0 1 0 0 AC3 AC2 AC1 AC0 Set ICON address in address 26.3 µs 18.5 µs 14.3 µs
in „Newbie Probleme bei LCD DOGM Initialisierung in Assembler“ · Mikrocontroller und Digitale Elektronik ·
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fsp204-2f01-sema_2.pdf
1 2 3 4 5 6 7 8 D S6 DS8 ! F1 FL1:2 ! FL2:1 FL3:1 L1 B A T2 4 ! BS1 RS18 L ! 43 21 21 ! N TC1 R2 CY 1 ! BD1 ! D 5 + C1 R 23 R10 T2:9 DS5 RS 14 Q S13 1 ! C 2 QS10 C ! RS 15 RS20 C7 C 8 L2 D 3 QS 5 QS 9 Z1 ! L5 T2:3 RS 12 ! C Y2 D 1 T2 11 DS 9 D6 T2 10 7 5 6 D 12 R1 34
in „SNT FSP204-2F01(S7) Problem 24V Ausgang“ · Analoge Elektronik und Schaltungstechnik ·
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PMOLED_2.4_WHITE_P19706-A01_3PF0MIM9J.pdf
1 ~63 VCOMH IREF D0~D7 E/RD# SSD1303 Column 2~129 128 x 64 R/W# OLED Panel D/C# RES# CS# ROW 0~62 BS1~BS2 VDD VSS 7.2 PANEL LAYOUT DIAGRAM - 9 - REV.: A01 2013/01/31 This document contains confidential and proprietaryNeither it nor the information contained herein shall be disclosed to others or duplicated
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hs_sed1375.pdf
Bus Interface Timing 7.1.1 SH-4 Interface Timing T CKIO t2 t3 CKIO t4 t5 A[16:0], M/R# RD/WR# t6 t7 BS# t8 CSn# t9 t10 t11 WEn# RD# t12 t13 t14 RDY# t15 t16 D[15:0] Hi-Z Hi-Z (write) t17 t18 D[15:0] Hi-Z VALID Hi-Z (read) Figure 7-1: SH-4 Timing Note The SH-4 Wait State Control Register for the area in
in „TFT an M16C62“ · Mikrocontroller und Digitale Elektronik ·
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BS612__2_.zh-CN.de.pdf
nach Deutsch - www.onlinedoctranslator.com Digitaler intelligenter pyroelektrischer Infrarotsensor BS612 Produktbeschreibung BS612 ist ein pyroelektrischer Infrarotsensor, der digitale intelligente Steuerkreise und empfindliche Elemente zur Erkennung des menschlichen Körpers in eine elektromagnetische
in „Bewegungsmelder BS612 - Sensorprobleme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EAW128128-XRLW.pdf
36.98¡ Ó 0.2 2.05¡ Ó 0.2 1 VSS 35.98(PLZ) 0.70 30.00 AA 1.10 2 VCC 3 VCOMH 4 VCI 5 VDD Cover Glass 6 BS1 BS2 7 s R 6 8 VSS l G ) r Z A 9 IREF 2 e P A . v ( 10 CS# 0 o 3 0 . 3 C . . 9 2 3 5 0 11 RES# . . 3 3 4 6 12 D/C 3 Pull tape 13 W/R# g 14 RD# i d e 15 D0 b n 16 D1 U IC 0 R . 17 D2 6 1 5 0 0.235 3 1
in „[V] 2x EA W128128-XRLW OLED-Display, rund, weiß“ · Markt ·
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PDF
SMD-PHILIPS_1999.pdf
C15 BN SC-76/SOD323 PDZ30B ZS SC-76/SOD323 BZX399-C16 BP SC-76/SOD323 PDZ33B ZT SC-76/SOD323 BZX399-C18 BQ SC-76/SOD323 PDZ36B ZU SC-76/SOD323 BZX399-C20 BR SC-76/SOD323 PLVA450A 450A PH SOD27 (DO35) BZX399-C22 BS SC-76/SOD323 PLVA453A 453A PH SOD27 (DO35) BZX399-C24 BT SC-76/SOD323 PLVA456A 456A PH SOD27
in „Datenbuch Valvo 1977 gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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STC04IE170HV.pdf
ratings Table 2. Absolute maximum ratings Symbol Parameter Value Unit VCS(SS) Collector-source voltageBS= VGS = 0) 1700 V VBS(OS) Base-source voltage CI = 0GSV= 0) 30 V VSB(OS) Source-base voltage CI = 0GSV= 0) 17 V VGS Gate-source voltage ± 17 V IC Collector current 4 A ICM Collector peak currenP (t <
in „Versorgung über Basis“ · Analoge Elektronik und Schaltungstechnik ·
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Bedienungsanleitung_Alinco_DJ-X7E.pdf
................................32 ■Vorprammierte Frequenzen ......................................18 (11)Klingelton-Funktion ................................................32 ■Speichermodus .........................................................19 (12)Auswahl Monitor/Stummschaltung ..............
in „Empfehlung für Radio Scanner mit AM/FM Demodulation“ · HF, Funk und Felder ·
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PDF
Lenovo_schematic.pdf
DDRB_DQ2 AM57 SA_DQ17 SA_CAS DDRA_CAS# {14} DDRB_DQ33 AK29 SB_DQ16 SB_WE AM33 DDRB_WE# {15} AK57 SA_DQ18 AU35 AL28 SB_DQ17 SB_CAS DDRB_CAS# {15} DDRB_DQ3 SA_DQ19 SA_BA0 DDRA_BS0# {14} DDRB_DQ34 SB_DQ18 DDRB_DQ4 AL58 SA_DQ20 SA_BA1 AV35 DDRA_BS1# {14} DDRB_DQ35 AK28 SB_DQ19 SB_BA0 AL35 DDRB_BS0# {15} DDRB_DQ5
in „Pin Belegung bei dem Chip“ · Mikrocontroller und Digitale Elektronik ·
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SSD1353_0.11.pdf
Rev 0.11 SSD1353 7 FUNCTIONAL BLOCK DESCRIPTIONS 7.1 MCU Interface SSD1353 MCU interface consist of 18 data pin and 5 control pins. The pin assignment at different interface mode is summarized in Table 7-1. Different MCU mode can be set by hardware selection on BS[3:0] pins (refer to Table 6-2 for BS[
in „RitDisplay RTS18160128FHC04 P16885 1,8" OLED Touch STM8“ · Mikrocontroller und Digitale Elektronik ·
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antenna-impedance-models.pdf
?) Dipole Directivity and Gain versus Length 4 1.269λDipole 2.λ Dipole 3.30 3.5 3.30 9λ/4 Dipole 5.18 dBi 3.07 5.18 dBi 4.87 dBi i a 3 G n a 2.5 t i c λ/2 Dipole e 2 1.64 i 2.15 dBi D 1.5 1 0 0.5 1 1.5 2 2.5 3 Dipole Length in Wavelengths Antenna Impedance Calculation Getting the current distribution
in „Endstufe für schwankende Lastimpedanz“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Acer_Aspire_5742G_Compal_LA-5893P_Rev0.1_Schematic.pdf
SA_MA[5] AA9 DDR_A_MA6 SB_MA[3] V3 DDR_B_MA4 SA_MA[6] V8 SB_MA[4] R1 SA_MA[7] T1 DDR_A_MA7 11 DDR_B_BS0 DDR_B_BS0 AB1 SB_BS[0] SB_MA[5] T8 DDR_B_MA5 SA_MA[8] Y9 DDR_A_MA8 11 DDR_B_BS1 DDR_B_BS1 W5 SB_BS[1] SB_MA[6] R2 DDR_B_MA6 10 DDR_A_BS0 DDR_A_BS0 AC3 SA_BS[0] SA_MA[9] U6 DDR_A_MA9 11 DDR_B_BS2 DDR_B_BS2 R7 SB_BS[2] SB_MA[7] R6 DDR_B_MA7 10 DDR_A_BS1 DDR_A_BS1 AB2 SA_BS[1] SA_MA[10] AD4 DDR_A_MA10 SB_MA[8] R4 DDR_B_MA8 10 DDR_A_BS2 DDR_A_BS2 U7 SA_BS[2] SA_MA[11] T2 DDR_A_MA11 SB_MA[9] R5 DDR_B_MA9 SA_MA[12]
in „Laptop Akkus ausbauen und mit Netzteil betreiben“ · PC Hard- und Software ·
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Diagrams_TF-118_TF-100.pdf
DAT1-SD G G D CC4 C47 C48 R41 5 DAT0-SD D D 4.7k 6 WPGND_SD2 C C 1 10uF 0.1uF 0.1uF 4.7k 7 VSS_SD MS_BS 8 VSS1 MS_CLK 9 BS R53 MS_D1 10 CLK_SD MS_D0 11 DATA1 10k 12 SDI0/DATA0 MS_D2 13 VDD_SD 14 DATA2 CARD_EN VCC3.3V SD/MS/XD_IN 15 VSS_SD2 MS_D3 16 INS MS_BS 17 DATA3 1 3 MS_CLK 18 CMD_SD D D R42 R43 19
in „Photo-Rahmen als Farbdisplay“ · Mikrocontroller und Digitale Elektronik ·
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NT7533Lcd.pdf
system. Different miltiplex rates require different factors n (see Table ). This is programmed by BS[2:0]. For using 1/48 duty, the optimum Bias value n is given by n = √48 –3 = 3.928 = 4 resulting in 1/8 bias. Table 7 BS2 BS1 BS0 n B (res. count) Duty 0 1 0 5 9 1:65 / 1:65 0 1 1 4 8 1:48 1 0 0 3 7
in „Seriell (4-Wire)-LCD-Ansteuerung mit NT7533“ · Mikrocontroller und Digitale Elektronik ·
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Datei
diskio.c
SDC) */ #define CMD16 (16) /* SET_BLOCKLEN */ #define CMD17 (17) /* READ_SINGLE_BLOCK */ #define CMD18 (18) /* READ_MULTIPLE_BLOCK */ #define CMD23 (23) /* SET_BLK_COUNT (MMC) */ #define ACMD23 (23|0x80) /* SET_WR_BLK_ERASE_COUNT (SDC) */ #define CMD24 (24) /* WRITE_BLOCK */ #define CMD25 (25) /* WRITE_MULTIPLE_BLOCK
in „Arduino oder doch lieber ein Keil NXP ARM Board?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
diskio.c
SDC) */ #define CMD16 (16) /* SET_BLOCKLEN */ #define CMD17 (17) /* READ_SINGLE_BLOCK */ #define CMD18 (18) /* READ_MULTIPLE_BLOCK */ #define CMD23 (23) /* SET_BLK_COUNT (MMC) */ #define ACMD23 (23|0x80) /* SET_WR_BLK_ERASE_COUNT (SDC) */ #define CMD24 (24) /* WRITE_BLOCK */ #define CMD25 (25) /* WRITE_MULTIPLE_BLOCK
in „Retro Fieber: Z80 oder 68000 ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Kabel-Problem-XT-XINTE-USB3.1_Type-C_Enclosure.txt
SSD 970 PRO 0208 /dev/sdc ... >time $(dd if=/dev/shm/BIG_FILE_12GB.bin of=/mnt/sdc/BIG_FILE_12GB.bin bs=1M status=progress; sync) 7742685184 bytes (7.7 GB, 7.2 GiB) copied, 121 s, 64.0 MB/s^C Abbruch mit Ctrl-C real 2m1.559s user 0m0.000s sys 0m0.000s root@zbook:~ > 7406+0 records in 7406+0 records out
in „XT-XINTE-NVMe-PCIE-USB3-1-HDD-Enclosur von Ebay“ · PC Hard- und Software ·
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PDF
Lenovo_ThinkPad_T14s_Gen_1_Intel_NM-C891_Schematic_Diagram_p35.pdf
VDDQ_D9 F2 M_B_DQ35 H7 DQL4 VDDQ_D9 F2 M_B_DQ51 H7 DQL4 VDDQ_D9 F2 M_B_DQ2 H3 DQL3 VDDQ_F2 F8 M_B_DQ18 H3 DQL3 VDDQ_F2 F8 M_B_DQ34 H3 DQL3 VDDQ_F2 F8 M_B_DQ50 H3 DQL3 VDDQ_F2 F8 M_B_DQ1 F7 DQL2 VDDQ_F8 G1 M_B_DQ17 F7 DQL2 VDDQ_F8 G1 M_B_DQ33 F7 DQL2 VDDQ_F8 G1 M_B_DQ49 F7 DQL2 VDDQ_F8 G1 M_B_DQ0 G2 DQL1
in „Wie lokalisiere ich ein defektes DRAM Modul?“ · PC Hard- und Software ·
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PDF
agsboy_rev_g.pdf
L L L L L agsBOY Rev. G (c) 2010, Sebastian Brückner GND GND GND GND GND GND GND sebastianb@ags.tu-bs.de 1 2 3 4 5 6 1 2 3 4 5 6 6 L1 C 1 +3V3 D1 LQH3C 22µ MBR0520 A S7 U3 1 M µ L A X7-2 6 5 R 1 2 1 3 SHDN FB 2 3 2xAA 0 8 COMP GND 7 H C17 +C18 2,4..3V 2 N 1 VC PGND 4 L D 1 0 4 1u 22u BAT +C19 LT1610
in „[V] Bausatz "agsBOY": Grafikdisplay, Beschleunigungssensor, analoger Joystick , USB“ · Markt ·
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futaba-NA204SD01AC.pdf
C.1 OF AMERICA DATE PRINTED: SHEET: SCHAUMBURG, IL. 11/12/98 8 OF 18 Figure 3. Communication Timing PART NUMBER: REV: FUTABA CORPORATION NA204SD01AC C.1 OF AMERICA DATE PRINTED: SHEET: SCHAUMBURG, IL. 11/12/98 9 OF 18 4.0 FUNCTIONAL DESCRIPTION 4.1 GENERAL Upon power
in „AVR Futaba Parallel "I80-Type" adaptieren auf "M68-Type"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc7707.pdf
when OE is low). Table 25-7. BS2 and BS1 Encoding Flash Data Flash / EEPROM Loading / Fuse Reading Fuse BS2 BS1 Address Reading Programming and Lock Bits 0 0 Low Byte Low Byte Low Byte Fuse Low Byte 0 1 High Byte High Byte High Byte
in „AVR (AT90USB162) - Sleep Mode und PCINT“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HUBER_2bSUHNER_1399.99.0037_DataSheet-1526153.pdf
antenna with LNA. Rugged design, meets EN 50155 railway standard. Fire retardant acc. to DIN 5510-2, BS 6853, NF F16-101/102, EN 45545-2. Extremely low profile (40mm). Product Configuration Technical Data Electrical Data Band 1 Band 2 Band 3 Band 4 Frequency (MHz) 790 - 806 806 - 870 870 - 960 1350 - 2700
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PDF
3_3V_Regler.pdf
-4.8BS 4.85V –40°C to +125°C SOT-223 Lead Temperature (Soldering, 5 seconds) ........ 260°C Storage Temperature Range ............ –65°C to +150°C MIC2920A-4.8BT 4.85V –40°C to +125°C TO-220 Operating Junction
in „3,3V Regler im SOT-89 Gehäuse“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
at90s2313-datasheet-atmel.pdf
Load Address High Byte ($00 - $03). 3. C: Load Address Low Byte ($00 - $FF). 4. Set OE to “0”, and BS to “0”. The Flash word low byte can now be read at DATA. 5. Set BS to “1”. The Flash word high byte can now be read from DATA. 6. Set OE to “1”. Programming the EEPROM The programming algorithm for the
in „AVR Studio 4.19“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT90S2313_Datasheet.pdf
Load Address High Byte ($00 - $03). 3. C: Load Address Low Byte ($00 - $FF). 4. Set OE to “0”, and BS to “0”. The Flash word low byte can now be read at DATA. 5. Set BS to “1”. The Flash word high byte can now be read from DATA. 6. Set OE to “1”. Programming the EEPROM The programming algorithm for the
in „Fragen zum Sleep Mode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Lenovo_ThinkPad_T14s_Gen_1_Intel_NM-C891_Schematic_Diagram_p33.pdf
VDDQ_F2 F2 M_A_DQ35 H7 DQL3 VDDQ_F2 F2 M_A_DQ51 H7 DQL3 VDDQ_F2 F2 M_A_DQ2 H3 DQL2 VDDQ_F8 F8 M_A_DQ18 H3 DQL2 VDDQ_F8 F8 M_A_DQ34 H3 DQL2 VDDQ_F8 F8 M_A_DQ50 H3 DQL2 VDDQ_F8 F8 M_A_DQ1 F7 DQL1 VDDQ_G1 G1 M_A_DQ17 F7 DQL1 VDDQ_G1 G1 M_A_DQ33 F7 DQL1 VDDQ_G1 G1 M_A_DQ49 F7 DQL1 VDDQ_G1 G1 M_A_DQ0 G2 DQL0
in „Wie lokalisiere ich ein defektes DRAM Modul?“ · PC Hard- und Software ·
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PDF
A5_emil_Flyer_WEB.pdf
Verkehrs-GmbH Am Hauptgüterbahnhof 28 38126 Braunschweig Telefon (05 31) 3 83-20 50 E-Mail marketing@verkehr-bs.de www.verkehr-bs.de/emil Braunschweig fährt jetzt induktiv! Der erste emil-Elektrobus ist auf der M19 unterwegs. „Hallo–ichbinEmilunddas sindmeinekleinenFreunde, die‚Induktiven‘.Wirlernen mitIhnendieinduktive
in „Primove Elektromobilität - wie funktioniert die Übertragung von 200 KW elektrotechnisch“ · HF, Funk und Felder ·
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PDF
T2_L4A_8650C.pdf
1452MHz~1492MHz (2) Antenna impedance 50Ω (3) IF frequency FM:108kHz DAB:1MHz 7-2 Signal format FM:BS5942-2 / BS 60315-4 DAB:ETSI EN 300 401, All Modes (I, II, III, and IV) support. 7-3 Analogue audio output Stereo audio output 7-4 Power supply voltage Pin46 +1.8V±10% Pin6 +1.2V±10% Pin30 +3.3V±10% 7
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PDF
spec-8139d_130_.pdf
10Mbps Mode: Always 0. 4-3 R PL1, PL0 Select 10Mbps medium type: Always (PL1, PL0) = (1, 0) 2-0 R BS2, BS1, BS0 Select Boot ROM size (Autoloaded from EEPROM) BS2 BS1 BS0 Description 0 0 0 No Boot ROM 0 0 1 8K Boot ROM 0 1 0 16K Boot ROM 0 1 1 32K Boot ROM 1 0 0 64K Boot ROM 1 0 1 128K Boot ROM 1 1 0
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Datei
keycodes.h
CTRL_F 0x06 // ASCII [ACKNOWLEGE] #define CTRL_G 0x07 // ASCII [BELL] #define CTRL_H 0x08 #define BS 0x08 // ASCII [BACKSPACE] #define CTRL_I 0x09 #define TAB 0x09 // ASCII [HORIZONTAL TAB] #define CTRL_J 0x0a // ASCII [LINE FEED] #define CTRL_K 0x0b // ASCII [VERTICAL TAB] #define CTRL_L 0x0c // ASCII
in „Atmega32 - PS/2 Keyboard - LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
fatgen102.pdf
is actually operating system specific. BS_Reserved1 37 1 Reserved (used by Windows NT). Code that formats FAT volumes should always set this byte to 0. BS_BootSig 38 1 Extended boot signature (0x29). This is a signature byte that indicates that the following three fields in the boot sector are present. BS_VolID 39 4 Volume serial number. This field, together with BS_VolLab, supports volume tracking on removable media. These values allow FAT file system drivers to detect that the wrong disk is inserted
in „FAT-Dateisystem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FatFormat.pdf
is actually operating system specific. BS_Reserved1 37 1 Reserved (used by Windows NT). Code that formats FAT volumes should always set this byte to 0. BS_BootSig 38 1 Extended boot signature (0x29). This is a signature byte that indicates that the following three fields in the boot sector are present. BS_VolID 39 4 Volume serial number. This field, together with BS_VolLab, supports volume tracking on removable media. These values allow FAT file system drivers to detect that the wrong disk is inserted
in „FAT-Dateisystem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CUPP_RELAYS.pdf
. 22.86–0.18 27.94–0.18 1 (1.300) (0.900–0.007) (1.100–0.007) 0.64 12 8 4 (0.025) 10 6 2 3.20 8 4 (0.125) 2.54–0.18 TopView 10 6 17.80MAX. 10.20MAX. (0.100–0.007) (0.700) (0.402) 7.62–0.18 TopView (0.300–0.007) 12.70–0.18 (0.500–0.007) CUP E/CUP V 5A/2A2B CUP E 5A CUP E 2A2B CUP V 2A2B 0.50 (0.020) – + – + 11 7 3 11 7 3 11 3 13 9 5 1 9 5 13 9 5 1 13 1 13 1 33.00MAX. 22.86–0.18 (1.300) (0.900–0.007) 27.94–0.18 (1.100–0.007
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PDF
l9805e.pdf
Write in Standby mode Reset Value: 23h 7 0 0 BS22 BS21 BS20 BS13 BS12 BS11 BS10 84/125 L9805E On-chip peripherals BS2[2:0] determine the length of Bit Segment 2. BS2 = CAN * (BS2 + 1) BS1[3:0] determine the length of Bit Segment 1. BS1 = CAN * (BS1
in „ST L9805-E Motortreiber mit H Brücke und ST7UD05 Kern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
CAN_SJW_1tq; /* ÖØÐÂͬ²œÌø¿í£¬Ö»ÓÐcanÓ²ŒþŽŠÓÚ³õÊŒ»¯Ä£ÊœÊ±²ÅÄÜ·ÃÎÊÕâžöŒÄŽæÆ÷ */ CAN_InitStructure.CAN_BS1 = CAN_BS1_4tq; /* ʱŒä¶Î1 */ CAN_InitStructure.CAN_BS2 = CAN_BS2_3tq; /* ʱŒä¶Î2 */ CAN_InitStructure.CAN_Prescaler = 45; /* ²šÌØÂÊÔ€·ÖƵÊý */ /* ²šÌØÂÊŒÆËã·œ·š */ /* CANbps= Fpclk/((BRP+1)*((Tseg1+1)+(Tseg2+1)+1) ŽËŽŠŒÆËãΪ CANbps=36000000/(45*(4+3+1))=100kHz */ //ŽËŽŠTseg1+1 = CAN_BS1_8tp /* ÅäÖÃŽó·œÏò: Tseg1>=Tseg2 Tseg2>=tq; Tseg2>=2TSJW */ if (CAN_Init(CAN1,&CAN_InitStructure) == CANINITFAILED) { /* ³õÊŒ»¯Ê±ÏÈÉèÖÃCAN_MCRµÄ³õÊŒ»¯Î» */ /* È»ºó²é¿ŽÓ²ŒþÊÇ·ñÕæµÄÉèÖÃÁËCAN_MSRµÄ³õÊŒ»
in „STM32 can Message“ · Mikrocontroller und Digitale Elektronik ·
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AT90PWM2_2B_3_3B__2_.pdf
DATA (“0” means programmed). 4. Set OE to “0”, BS2 to “1”, and BS1 to “0”. The status of the Extended Fuse bits can now be read at DATA (“0” means programmed). 5. Set OE to “0”, BS2 to “0” and BS1 to “1”. The status of the Lock bits can now be read at DATA (“0” means programmed). 6. Set OE to “1”. 291 4317I–AVR–01/08 Figure 25-6. Mapping Between BS1, BS2 and the Fuse and Lock Bits During Read Fuse Low Byte 0 0 Extended Fuse Byte 1 DATA BS2 Lock Bits 0 1 BS1 Fuse High Byte 1 BS2 25.8.13 Reading the Signature Bytes The algorithm for reading the Signature
in „Interrupt bem Flankenwechsel beim AVR“ · Mikrocontroller und Digitale Elektronik ·
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at90pwm3.pdf
DATA (“0” means programmed). 4. Set OE to “0”, BS2 to “1”, and BS1 to “0”. The status of the Extended Fuse bits can now be read at DATA (“0” means programmed). 5. Set OE to “0”, BS2 to “0” and BS1 to “1”. The status of the Lock bits can now be read at DATA (“0” means programmed). 6. Set OE to “1”. 291 4317I–AVR–01/08 Figure 25-6. Mapping Between BS1, BS2 and the Fuse and Lock Bits During Read Fuse Low Byte 0 0 Extended Fuse Byte 1 DATA BS2 Lock Bits 0 1 BS1 Fuse High Byte 1 BS2 25.8.13 Reading the Signature Bytes The algorithm for reading the Signature
in „Schrittmotorsteuerung mir 90atPWM3“ · Mikrocontroller und Digitale Elektronik ·
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180854-da-01-en-OLED_DISPLAY_VGY12864Z_S005_128X64.pdf
to the Timing Characteristics Diagrams. RES# 16 Reset,active low CS# 17 Chip Select,active low NC 18 No Connection These are MCU interface input selection pins. See the following table for selecting different interfaces: BS2 19 6800-paralle 8080-parallel Serial interface interface interface BS1 0 1 0 BS1 20 BS2 1 1 0 VDD 21 Logic Voltage +3V NC 22 No Connection NC 23 No Connection NC 24 No Connection VBREF 25 This is an internal voltage reference pin for booster circuit. A stabilization capacitor, typ
in „OLED VGY12864Z-S005 über LPT Port ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Display__W128128-XALG-1275535_.pdf
VCC 2.47 28.86VA 2.05¡0.2 3 VCOMH 0 0 0 3.47 26.86AA 0.70 4 VCI . . . PULL TAPE 1.10 0 1 2 5 VDD 6 BS1 7 BS2 8 VSS e 9 IREF r A A 10 CS# 0 05 o 6 6 0 2 P . . 128*128 DOTS 11 RES# . 3 . 2 2 12 D/C 3 3 13 W/R# 14 RD# 15 D0 e 16 D1 G 17 D2 5 shading tape 18 D3 4 RoHS 0¡Ó00. 19 D4 . R0.5 20 D5 ¡ 10.50¡0.1
in „Display EA W128128-XALG Strombedarf“ · Mikrocontroller und Digitale Elektronik ·
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FD6287T_cn-translated.pdf
e TA - 40 125 -C Note1:VS1,2for(COM-2V)arrivr250Vhour,HOnormal work.V S1,2for(COM-2V)arrive(COM-V BS)hour,HOLogical state is maintained. Note2:S1,for(COM-50V),Width50nsof transient negative voltages, theHOnormal work. Note3: The chip woPks above the recommended working conditions for a long time, which
in „PWM: Motortreiber schaltet bei Tastverhältnis Reduktion ab“ · Analoge Elektronik und Schaltungstechnik ·